肌醇六硫酸盐六钾盐结构式
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常用名 | 肌醇六硫酸盐六钾盐 | 英文名 | MYO-INOSITOL HEXASULFATE HEXAPOTASSIUM SALT |
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CAS号 | 28434-25-5 | 分子量 | 699.63300 | |
密度 | N/A | 沸点 | N/A | |
分子式 | C6H12KO24S6 | 熔点 | N/A | |
MSDS | 中文版 美版 | 闪点 | N/A |
The stability of bFGF against thermal denaturation.
J. Pharm. Pharmacol. 46(6) , 481-6, (1994) The influence of sulphated ligand and pH on thermal denaturation of basic fibroblast growth factor (bFGF) was investigated by differential scanning calorimetry (DSC), and verified by fluorescence spectrophotometry. Purity of bFGF before and after heat denatur... |
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Anti-HIV-1 activity of myo-inositol hexaphosphoric acid (IP6) and myo-inositol hexasulfate(IS6).
Anticancer Res. 19(5A) , 3723-6, (1999) It is known that polysulfates have some anti-HIV-1 activity. We investigated the anti-HIV-1 activity of myo-inositol hexaphosphoric acid (IP6) and myo-inositol hexasulfate(IS6), low molecular weight carbohydrates. IP6 and IS6 inhibited the replication of HIV-... |
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Inositol hexasulphate, a casein kinase inhibitor, alters the distribution of dentin matrix protein 1 in cultured embryonic mouse tooth germs.
Eur. J. Oral Sci. 109(3) , 198-203, (2001) Immunohistochemical studies using a polyclonal antibody, raised against the recombinant form of dentin matrix protein 1 (DMP1), show that DMP1 was detected mainly in odontoblasts in cultured mouse embryonic tooth germs. However, in restricted areas, DMP1 stai... |
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Alkaline phytase from lily pollen: Investigation of biochemical properties.
Arch. Biochem. Biophys. 440(2) , 133-40, (2005) Phytases catalyze the hydrolysis of phytic acid (InsP6, myo-inositol hexakisphosphate), the most abundant inositol phosphate in cells. In cereal grains and legumes, it constitutes 3-5% of the dry weight of seeds. The inability of humans and monogastric animal... |
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Fungal phyA gene expressed in potato leaves produces active and stable phytase.
Biochem. Biophys. Res. Commun. 306(2) , 603-9, (2003) Fungal phyA gene from Aspergillus ficuum (niger) was cloned and expressed in potato leaves. The recombinant enzyme was stable and catalytically active. The expressed protein in the leaves of the dicotyledonous plant retained most physical and catalytic proper... |
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Biochemical characterization of cloned Aspergillus fumigatus phytase (phyA).
Biochem. Biophys. Res. Commun. 275(2) , 279-85, (2000) The gene for Aspergillus fumigatus phytase (phyA) was cloned and expressed in Pichia pastoris. The enzyme expressed was purified to near homogeneity using sequential ion-exchange chromatography and was characterized biochemically. Although A. fumigatus phytas... |
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Electron spin resonance (ESR) studies of skeletal protein interactions in human erythrocyte membranes exposed to polyanions and in membranes prepared from inositol hexaphosphate (IHP)-incorporated low-affinity erythrocytes.
Biochem. Biophys. Res. Commun. 144(2) , 779-86, (1987) Previous biophysical investigations, including those from our laboratories, have reported that polyphosphates weaken RBC membrane skeletal protein-protein interactions and decrease hemoglobin affinity for oxygen. We have additionally demonstrated that low-aff... |
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Myo-inositol hexasulphate and low molecular weight heparin binding to human acidic fibroblast growth factor: a calorimetric and FTIR study.
Int. J. Biol. Macromol. 28(4) , 305-13, (2001) The interaction of an amino-terminal-truncated 139 amino-acids form of human acidic fibroblast growth factor with myo-inositol hexasulphate and low molecular weight (3500 g mol(-1)) heparin has been studied by isothermal titration calorimetry, differential sc... |
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Anticoagulant effect of inositol hexasulfate as measurable by clotting times of fibrinogen and recalcified plasma.
Thromb. Res. 58(3) , 243-50, (1990) Thrombin-clotting time of fibrinogen was delayed by inositol hexasulfate (IHS). Clotting time of the recalcified plasma was also delayed by IHS. Moreover, when IHS was intravenously injected into anesthetized male rabbits (0.11 mmoles/kg), it delayed clotting... |
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[Inhibitory effect of inositol hexasulfate and inositol hexaphosphoric acid (phytic acid) on the proliferation of the human immunodeficiency virus (HIV) in vitro].
Kansenshōgaku Zasshi. 63(7) , 676-83, (1989) The monosaccharide substances inositol hexasulfate (IHS) and inositol hexaphosphoric acid (Phytic acid, IHP) were investigated for their antiviral effect on the human immunodeficiency virus (HIV) in vitro. In MT-4 cells IHS completely inhibited the cytopathic... |